US5102520AExpiredUtility

Electrolytic etching process and apparatus

Individually held — no corporate assignee on recordPriority: Oct 31, 1990Filed: Oct 31, 1990Granted: Apr 7, 1992
Est. expiryOct 31, 2010(expired)· nominal 20-yr term from priority
C25F 7/00C25F 3/02
32
PatentIndex Score
4
Cited by
13
References
27
Claims

Abstract

There is provided an apparatus and a process for using same for etching a metallic object, suitably a plate to prepare a metallic printing plate. The object is partially covered by a resist surface wherein the exposed portions of said metal, will be exposed to the action of an electrolytic etchant force. The apparatus comprises a bath for an aqueous electrolyte, an electrode, suitably but not critically metallic, immersible in said electrolyte, which will serve as the cathode, a source of direct current voltage, which may be adjustable for controlling the applied voltage. The voltage should be adjustable to operate accurately within a rather narrow voltage range, such that the minimum voltage shall be at least that of the ionization potential of the metal of the metal object in the electrolyte chosen and the maximum shall not substantially exceed the sum of the decomposition voltage of the aqueous electrolyte and the over-voltage of the cathode selected.

Claims

exact text as granted — not AI-modified
We claim: 
     
       1. A process of etching a roughened surface directly onto a metallic object, the original surface whereof is partially covered by a resist surface and causing the thus exposed portions of said metal object to be subjected to the action of an etchant force in an electrolytic bath containing an aqueous electrolyte, an electrode and a source of direct current voltage having a positive pole and a negative pole, comprising the steps of a) immersing said metallic object to be etched in said bath proximate to but spaced from said electrode,   b) connecting the negative pole of said direct current voltage source to said electrode and the positive pole to said metal object whereby said electrode becomes the cathode and said metal object becomes the anode,   c) providing the applied voltage so that it shall be at least that of the ionization potential of the metal of the object in the electrolyte chosen and shall not substantially exceed the sum of the decomposition voltage of the aqueous electrolyte and the over-voltage of the cathode selected whereby hydrogen evolution is avoided, and   d) applying said selected voltage until the desired depth of metal has been removed from the exposed portions of the anode and the desired degree of roughness attained thereon wherein said electrolyte contains initially cations of at least one of the metals constituting the anode.   
     
     
       2. The process of claim 1 wherein said direct current voltage source additionally comprises a means for adjusting the voltage. 
     
     
       3. The process of claim 1 wherein the metal object is a plate. 
     
     
       4. The process of claim 1 wherein the metal of the metal plate is zinc, copper, brass, bronze, iron, steel or a noble metal. 
     
     
       5. The process of claim 4 wherein the process is carried out with the bath at a pH of more than 7. 
     
     
       6. The process of claim 1 wherein the passage of electrolyte between the resist surface and the surface of the metal in contact therewith is prevented. 
     
     
       7. The process of claim 6 wherein predetermined segments of the metal are exposed by removal of the resist surface prior to the application of voltage. 
     
     
       8. The process of claim 7 wherein said segments are substantially linear. 
     
     
       9. The process of claim 1 wherein the random passage of electrolyte between the resist coating and the surface of the metal in contact with the major portion of said resist surface is permitted. 
     
     
       10. The process of claim 9 wherein predetermined segments of the metal are exposed by removal of the resist surface prior to the application of voltage. 
     
     
       11. The process of claim 1 wherein a stream of air is passed through said electrolyte. 
     
     
       12. The process of claim 1 additionally comprising the step of sensing the pH of the electrolyte. 
     
     
       13. The process of claim 12 additionally comprising the step of adjusting the pH of the electrolyte. 
     
     
       14. The process of claim 1 additionally comprising the step of sensing the temperature of the electrolyte. 
     
     
       15. The process of claim 14 additionally comprising the step of adjusting the temperature of the electrolyte. 
     
     
       16. The process of claim 1 wherein the polarity of the anode and the cathode as originally designated are reversed at least once during the course of the process. 
     
     
       17. A process of claim 1 wherein the applied voltage is between about 0.3 and about 2 volts. 
     
     
       18. A process of claim 1 wherein the applied voltage is between 0.4 and 0.7 volts. 
     
     
       19. The process of claim 1 wherein the voltage applied is between 0.4 and 1 volt. 
     
     
       20. A process of etching a roughened surface directly onto a metallic object, the original surface whereof is partially covered by a resist surface and causing the thus exposed portions of said metal object to be subjected to the action of an etchant force in an electrolytic bath containing an aqueous electrolyte, an electrode and a source of direct current voltage having a positive pole and a negative pole, comprising the steps of a) immersing said metallic object to be etched in said bath proximate to but spaced from said electrode,   b) connecting the negative pole of said direct current voltage source to said electrode and the positive pole to said metal object whereby said electrode becomes the cathode and said metal object becomes the anode,   c) providing the applied voltage so that it shall be at least that of the ionization potential of the metal of the object in the electrolyte chosen and shall not substantially exceed the sum of the decomposition voltage of the aqueous electrolyte and the over-voltage of the cathode selected whereby hydrogen evolution is avoided, and   d) applying said selected voltage until the desired depth of metal has been removed from the exposed portions of the anode and the desired degree of roughness attained thereon wherein said electrolyte initially contains cations of at least one of the metals constituting the anode wherein the process is carried out with the bath at a pH of less than 7.   
     
     
       21. An apparatus for etching a roughened surface onto a metallic object, the original surface whereof is partially covered with a resist surface by causing the thus exposed portions of said metal object to be subjected to the action of an electrolytic etchant force, comprising a) a bath for containing an aqueous electrolyte,   b) an electrode located in said bath and immersible in said electrolyte to form a cathode,   c) a source of direct current having a positive pole adapted for connection to said object when immersed in said electrolyte proximate to but spaced from said electrode, the negative pole of said source being adapted for connection to said electrode when immersed in said electrolyte means for controlling voltage so that, the magnitude of voltage from said source is at least that of the ionization potential of the metal of the object in the electrolyte chosen and not substantially greater than the sum of the decomposition voltage of the aqueous electrolyte plus the over-voltage of the cathode selected whereby hydrogen evolution is avoided, said electrolyte initially containing cations of at least one of the metals constituting the metal object.   
     
     
       22. The apparatus of claim 21 additionally comprising means for passing a stream of air through said electrolytic cell. 
     
     
       23. The apparatus of claim 21 additionally comprising means for sensing the pH of the electrolyte. 
     
     
       24. The apparatus of claim 23 additionally comprising means for adjusting the pH of the electrolyte. 
     
     
       25. The apparatus of claim 21 additionally comprising means for sensing the temperature of the electrolyte. 
     
     
       26. The apparatus of claim 25 additionally comprising means for adjusting the temperature of the electrolyte. 
     
     
       27. The apparatus of claim 21 additionally comprising means for reversing the polarity of the anode and the cathode as originally designated.

Join the waitlist — get patent alerts

Track US5102520A — get alerts on status changes and closely related new filings.

We store only your email — no account needed. See our privacy policy.